Literature DB >> 19671003

Host specialization and phylogenetic diversity of Corynespora cassiicola.

L J Dixon1, R L Schlub, K Pernezny, L E Datnoff.   

Abstract

The fungus Corynespora cassiicola is primarily found in the tropics and subtropics, and is widely diverse in substrate utilization and host association. Isolate characterization within C. cassiicola was undertaken to investigate how genetic diversity correlates with host specificity, growth rate, and geographic distribution. C. cassiicola isolates were collected from 68 different plant species in American Samoa, Brazil, Malaysia, and Micronesia, and Florida, Mississippi, and Tennessee within the United States. Phylogenetic analyses using four loci were performed with 143 Corynespora spp. isolates, including outgroup taxa obtained from culture collections: C. citricola, C. melongenae, C. olivacea, C. proliferata, C. sesamum, and C. smithii. Phylogenetic trees were congruent from the ribosomal DNA internal transcribed spacer region, two random hypervariable loci (caa5 and ga4), and the actin-encoding locus act1, indicating a lack of recombination within the species and asexual propagation. Fifty isolates were tested for pathogenicity on eight known C. cassiicola crop hosts: basil, bean, cowpea, cucumber, papaya, soybean, sweet potato, and tomato. Pathogenicity profiles ranged from one to four hosts, with cucumber appearing in 14 of the 16 profiles. Bootstrap analyses and Bayesian posterior probability values identified six statistically significant phylogenetic lineages. The six phylogenetic lineages correlated with host of origin, pathogenicity, and growth rate but not with geographic location. Common fungal genotypes were widely distributed geographically, indicating long-distance and global dispersal of clonal lineages. This research reveals an abundance of previously unrecognized genetic diversity within the species and provides evidence for host specialization on papaya.

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Year:  2009        PMID: 19671003     DOI: 10.1094/PHYTO-99-9-1015

Source DB:  PubMed          Journal:  Phytopathology        ISSN: 0031-949X            Impact factor:   4.025


  26 in total

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4.  Complete genome sequence of a novel fusarivirus from the phytopathogenic fungus Corynespora cassiicola.

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5.  Fine genetic mapping of target leaf spot resistance gene cca-3 in cucumber, Cucumis sativus L.

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6.  A class-wide phylogenetic assessment of Dothideomycetes.

Authors:  C L Schoch; P W Crous; J Z Groenewald; E W A Boehm; T I Burgess; J de Gruyter; G S de Hoog; L J Dixon; M Grube; C Gueidan; Y Harada; S Hatakeyama; K Hirayama; T Hosoya; S M Huhndorf; K D Hyde; E B G Jones; J Kohlmeyer; A Kruys; Y M Li; R Lücking; H T Lumbsch; L Marvanová; J S Mbatchou; A H McVay; A N Miller; G K Mugambi; L Muggia; M P Nelsen; P Nelson; C A Owensby; A J L Phillips; S Phongpaichit; S B Pointing; V Pujade-Renaud; H A Raja; E Rivas Plata; B Robbertse; C Ruibal; J Sakayaroj; T Sano; L Selbmann; C A Shearer; T Shirouzu; B Slippers; S Suetrong; K Tanaka; B Volkmann-Kohlmeyer; M J Wingfield; A R Wood; J H C Woudenberg; H Yonezawa; Y Zhang; J W Spatafora
Journal:  Stud Mycol       Date:  2009       Impact factor: 16.097

7.  Chakyunglupulins A and B, two novel 4,8,8-trimethylcyclooct-2-enone derivatives from Barleria lupulina.

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8.  Fungal diversity in adult date palm (Phoenix dactylifera L.) revealed by culture-dependent and culture-independent approaches.

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9.  Genome sequences and in silico effector mining of Corynespora cassiicola CC_29 and Corynespora olivacea CBS 114450.

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Review 10.  Inherited CARD9 Deficiency: Invasive Disease Caused by Ascomycete Fungi in Previously Healthy Children and Adults.

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